Electronic and magnetic phase diagram of Sr2FeO4 at high pressure: A synchrotron Mössbauer study

被引:1
|
作者
Adler, Peter [1 ]
Medvedev, Sergey A. [1 ]
Mu, Qingge [1 ]
Bessas, Dimitrios [2 ]
Chumakov, Aleksandr [2 ]
Yaroslavtsev, Sergey [2 ]
Jansen, Martin [1 ,3 ]
Felser, Claudia [1 ]
机构
[1] Max Planck Inst Chem Phys Fester Stoffe, D-01187 Dresden, Germany
[2] ESRF European Synchrotron, CS 40220, F-38043 Grenoble 9, France
[3] Max Planck Inst Festkorperforsch, D-70569 Stuttgart, Germany
关键词
SPIN-MODULATED STRUCTURE; CHARGE DISPROPORTIONATION; MOSSBAUER-SPECTROSCOPY; FE-57; MOSSBAUER; DIFFRACTION; TRANSITION; ORDER; SOFTWARE; SR3FE2O7; SPECTRA;
D O I
10.1103/PhysRevB.110.054444
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Transition metal (TM) oxides with high oxidation state TM ions exhibit a variety of unconventional electronic and magnetic states owing to electron correlations effects combined with highly covalent TM-O bonding. Here, we have studied the pressure dependence of electronic state and magnetism of the K2NiF4-type iron(IV) oxide Sr2FeO4 up to 89 GPa by temperature and magnetic field dependent energy-domain synchrotron M & ouml;ssbauer spectroscopy and derived a (P,T) magnetic phase diagram. Considering also previous resistance studies [Rozenberg et al., Phys. Rev. B 58, 10283 (1998)] several magnetic and electronic regimes with increasing pressure can be identified. Near 7 GPa, the insulating cycloidal antiferromagnetic low-P state is transformed into a semiconducting ferromagnetic state and the magnetic ordering temperature Tm increases from 55 K at ambient pressure to about 100 K at 13 GPa. Between 18 and about 50 GPa the system is ferromagnetic and metallic (FMM) with a strong rise of Tm to above room temperature (RT). Contrary to a recent theoretical study [Kazemi-Moridani et al., Phys. Rev. B 109, 165146 (2024)], the FMM state is attributed to a high-spin t32ge1g electronic state with itinerant eg coupled to more localized t2g electrons. Between 50 and 89 GPa a doublet with large quadrupole splitting in the RT M & ouml;ssbauer spectra indicates a partial high-spin to low-spin (t42g) transition leading to a decrease in Tm again. The general features of the (P,T) phase diagram of Sr2FeO4 are comparable to those of other simple and A-site ordered iron(IV) perovskite-related oxides with the peculiarity that Sr2FeO4 adopts an insulating state without charge disproportionation of Fe4+ in the low-P region. The high-pressure behavior of Sr2FeO4 and other iron(IV) oxides may be relevant for exploring the role of Hund's physics in multiorbital systems and contributing to the understanding of the electronic situation in unconventional superconductors such as La3Ni2O7 and Sr2RuO4.
引用
收藏
页数:12
相关论文
共 32 条
  • [1] Magnetic phase diagram of FeO at high pressure
    Zhang, Peng
    Cohen, R. E.
    Haule, K.
    NATIONAL CONFERENCE ON THEORY OF MAGNETISM, 2017, 827
  • [2] High-pressure p-p band closure of the negative-△ Sr2FeO4 perovskite
    Pasternak, MP
    Amanowicz, M
    Milner, AP
    Rozenberg, GK
    Taylor, RD
    Hearne, GR
    Brister, KE
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 1998, 177 : 1377 - 1378
  • [3] Spiral magnetism, spin flop, and pressure-induced ferromagnetism in the negative charge-transfer-gap insulator Sr2FeO4
    Adler, Peter
    Reehuis, Manfred
    Stuesser, Norbert
    Medvedev, Sergey A.
    Nicklas, Michael
    Peets, Darren C.
    Bertinshaw, Joel
    Christensen, Christian Kolle
    Etter, Martin
    Hoser, Andreas
    Schroeder, Liane
    Merz, Patrick
    Schnelle, Walter
    Schulz, Armin
    Mu, Qingge
    Bessas, Dimitrios
    Chumakov, Aleksandr
    Jansen, Martin
    Felser, Claudia
    PHYSICAL REVIEW B, 2022, 105 (05)
  • [4] Sr2IrO4 magnetic phase diagram from resistivity
    Fruchter, Luc
    Collin, Gaston
    Colson, Dorothee
    Brouet, Veronique
    EUROPEAN PHYSICAL JOURNAL B, 2015, 88 (06)
  • [5] STRUCTURE AND MAGNETIC-PROPERTIES OF SR2FEO4 AND SR3FE2O7 STUDIED BY POWDER NEUTRON-DIFFRACTION AND MOSSBAUER-SPECTROSCOPY
    DANN, SE
    WELLER, MT
    CURRIE, DB
    THOMAS, MF
    ALRAWWAS, AD
    JOURNAL OF MATERIALS CHEMISTRY, 1993, 3 (12) : 1231 - 1237
  • [6] ELECTRONIC AND MAGNETIC STRUCTURE OF THE HIGH PRESSURE PHASE OF Li2CuO2
    Li, Zhi
    Tse, John S.
    You, Shujie
    Jin, C. Q.
    Iitaka, Toshiaki
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2011, 25 (26): : 3409 - 3414
  • [7] High-pressure magnetic, electronic, and structural properties of MFe2O4 (M = Mg, Zn, Fe) ferric spinels
    Greenberg, E.
    Xu, W. M.
    Nikolaevsky, M.
    Bykova, E.
    Garbarino, G.
    Glazyrin, K.
    Merkel, D. G.
    Dubrovinsky, L.
    Pasternak, M. P.
    Rozenberg, G. Kh.
    PHYSICAL REVIEW B, 2017, 95 (19)
  • [8] Ab initio study of magnetic phase transition and electronic properties of CeFe2 under high pressure
    Wang, Yiyuan
    Feng, Ji
    PHYSICAL REVIEW B, 2024, 110 (14)
  • [9] Anisotropic lattice compression and pressure-induced electronic phase transitions in Sr2IrO4
    Samanta, K.
    Tartaglia, R.
    Kaneko, U. F.
    Souza-Neto, N. M.
    Granado, E.
    PHYSICAL REVIEW B, 2020, 101 (07)
  • [10] Structural, Mössbauer spectroscopy and magnetic study of Co1-xCdxFe2O4 ferrite synthesized by glycol-thermal method
    Masuku, S. J. C.
    Msomi, J. Z.
    Nhlapo, T. A.
    Moyo, T.
    INORGANIC CHEMISTRY COMMUNICATIONS, 2024, 160